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Upregulation of Nrf2 signaling: A key molecular mechanism of Baicalin’s neuroprotective action against diabetes-induced cognitive impairment

Authors :
Yanfang Zheng
Chenxiang Wang
Wenjing Liu
Jiaying Chen
Yibin Sun
Dennis Chang
Huan Wang
Wen Xu
Jin-Jian Lu
Xian Zhou
Mingqing Huang
Source :
Biomedicine & Pharmacotherapy, Vol 174, Iss , Pp 116579- (2024)
Publication Year :
2024
Publisher :
Elsevier, 2024.

Abstract

Background and aim: Diabetes-associated cognitive impairment (DCI) is a prevalent complication of diabetes. However, there is a lack of viable strategies for preventing and treating DCI. This study aims to explore the efficacy of baicalin (Bai) in attenuating DCI and elucidating the underlying mechanisms. Experimental procedure: GK rats fed a high-fat and high-glucose diet were utilized to investigate the therapeutic potential of Bai. Cognitive function was assessed using the Morris water maze and novel object recognition tests. To gain insight into the molecular mechanisms underlying Bai’s neuro-protective effects, co-cultured BV2/HT22 cells were established under high-glucose (HG) stimulation. The modes of action of Bai were subsequently confirmed in vivo using the DCI model in db/db mice. Key results: Bai restored cognitive and spatial memory and attenuated neuron loss, along with reducing expressions of Aβ and phosphorylated Tau protein in diabetic GK rats. At the cellular level, Bai exhibited potent antioxidant and anti-inflammatory effects against HG stimulation. These effects were associated with the upregulation of Nrf2 and supressed Keap1 levels. Consistent with these in vitro findings, similar mechanisms were observed in db/db mice. The significant neuroprotective effects of Bai were abolished when co-administered with ATRA, a Nrf2 blocker, in db/db mice, confirming that KEAP1-Nrf2 signaling pathway was responsible for the observed effect. Conclusions and implications: Bai demonstrates a great therapeutic potential for attenuating DCI. The antioxidant defense and anti-inflammatory actions of Bai were mediated through the KEAP1-Nrf2 axis. These findings advance our understanding of potential treatment approaches for DCI, a common complication associated with diabetes.

Details

Language :
English
ISSN :
07533322
Volume :
174
Issue :
116579-
Database :
Directory of Open Access Journals
Journal :
Biomedicine & Pharmacotherapy
Publication Type :
Academic Journal
Accession number :
edsdoj.f7a7ea1c692946e49f5ddd707f537fad
Document Type :
article
Full Text :
https://doi.org/10.1016/j.biopha.2024.116579